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序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
61 DER0065754 1925-10-27 DE458033C 1928-03-30
62 FR633181D 1926-08-12 FR633181A 1928-01-23
63 Improvements in printing machines for printing from flat engraved plates GB1118325 1925-04-29 GB241470A 1925-10-22
241,470. Hoe & Co., Ltd., R., (Hoe & Co., Inc., R.) April 29, 1925. Intaglio-plate printing. - In a machine for printing from flat engraved plates, the plates move continuously in one direction under the inking, wiping, and impression mechanisms, along guide frames 1, 2, having curved ends 3, 4 and straight side portions 5, 6. The beds 15 carrying the printing-plates P are provided with racks 19 engaging two large gear-wheels 40, 41 driven from a central shaft 50. Means for guiding the beds comprise a roller 22 mounted on a: plate 21 adjustably attached to the rack 19 and engaging a fixed rail 23, and rollers 28, 29 on brackets 30 adjustably secured to the bed 15 and engaging the guide frames 1, 2. The plates pass under wiping- mechanism, inking-mechanism, and impression rollers of ordinary construction, the inking-mechanism being situated above the curved parts of the guides 1, 2 so that the plate is in a position diagonal to the axes of the inking-rollers at the beginning and end of the inking operation, and thus a rough wiping of the plate is obtained.
64 DESC064959 1922-05-18 DE419053C 1925-09-18
65 FR593589D 1924-05-02 FR593589A 1925-08-26
66 Improvements in machines for printing from engraved plates GB3230123 1923-12-27 GB230938A 1925-03-26
230,938. Sattler, R. Dec. 27, 1923. Guards, controlling.-In machines for printing from engraved plates comprises a reciprocating bed 5 co-operating with a segmental impression roller 25, a guard is provided comprising a bar 128 fixed on the end of a lever 129 pivoted at 130, the bar extending across the machine between the impression roller and the bed. A cam 127 fixed on the shaft 26 of the roller 25 is adapted to engages a roller 131 on the lever 129 so as to swing the bar outwardly when the roller starts rotating and remove the operator's hand. Specification 180,869, [Class 100 (ii), Printing processes &c.] is referred to.
67 DEH0092309 1923-01-06 DE387697C 1924-01-02
68 A portable copper plate card printing machine GB2670620 1920-09-18 GB173054A 1921-12-19
173,054. Popham, H. G. Sept. 18, 1920. Intaglio-plate printing.-A portable copper-plate card-printing machine of the kind having a manually rotatable impression cylinder and a movable carriage driven by the cylinder, the latter having a flat portion to enable the carriage to be returned automatically by a spring &c. to its initial position when the flat portion is adjacent to the carriage, comprises also a rack on the carriage adapted to engage with a pinion on the cylinder for driving the carriage during its printing stroke. The carriage 15, on which the copper plate is secured by an adhesive, slides along bevelled ways 14 on the frame 10, and is provided with a rack 36 coacting with a pinion 35 on the impression cylinder 28 journaled in bearing-blocks 26 supported by springs 29 and adjustable by screws 30. A spring 20, carried in a tube 17 on the frame and having its ends attached respectively to the frame and to the carriage, returns the latter automatically on completion of its printing-stroke when the flat portion 31, Fig. 3, on the impression cylinder is adjacent to the carriage. A plunger 22, Fig. 7, on the underside of the carriage, moves in another tube 18 and contacts with a spring 23 for eliminating jar at the end of the return stroke of the carriage. One of the radial arms 38 for rotating the cylinder 28 is loaded, the loaded arm being the one at right-angles to the flattened face 31 so that the cylinder normally rests in a position with its flat face 31 underneath, allowing the spring 20 to maintain the carriage in its initial position.
69 DE327925D DE327925C 1920-10-22
70 FR367441D 1906-06-26 FR367441A 1906-10-29 MORGAN STEPHEN LINCOLN
71 FR635D 1902-06-28 FR635E 1903-02-18 P.-J.-R. DUJARDIN
72 PRINTING APPARATUS AND PRINTING METHOD EP14772951.1 2014-03-11 EP2979867A1 2016-02-03 KODAMA, Kenichi

The present invention provides a printing apparatus and a printing method that can form a preferable micropattern by a printing process using an intaglio plate. A printing apparatus according to an aspect of the present invention includes: a printing plate (12) having a recessed portion (12A) formed therein shaped corresponding to a pattern (31C) to be formed on a substrate (14); an inking unit (20) including an inkjet head (30), performing an inking process of ejecting a liquid into the recessed portion of the printing plate, the liquid having particles as a material of the pattern dispersed therein; a laminating unit (24) performing a laminating process of laminating the substrate on a surface having the recessed portion of the printing plate formed therein after the inking process; a post-drying unit (26) performing a drying process on the liquid inside the recessed portion in a state in which the substrate is laminated on the surface having the recessed portion of the printing plate formed therein, to reduce liquid fluidity; and a peeling unit (28) peeling off the substrate from the printing plate after the drying process by the post-drying unit.

73 INTAGLIO PRINTING METHODS, APPARATUSES, AND PRINTED OR COATED MATERIALS MADE THEREWITH EP08857991.7 2008-12-05 EP2229278A1 2010-09-22 BOTRIE, Alexander
Intaglio printing methods and apparatuses are disclosed, involving the use of a curable resin composition (e.g., curable by actinic radiation). The composition may be applied to a substrate, such as a printable material, at a depth of 250 μm or more, in order to create a desirable, three-dimensional effect. To produce this type of printed or coated substrate, the composition is first transferred to cells or recesses, having a depth of these dimensions, onto a printing surface (e.g., a gravure cylinder) and then at least partially cured. The at least partially cured composition is then transferred to the substrate (e.g., paper or plastic) where additional curing may occur, to produce the final printed or coated article.
74 Tiefgedruckte Vorrichtungen und Verfahren zur Herstellung solcher Vorrichtungen AT91942017 2017-06-22 AT520513A2 2019-04-15 KARLO IVAN JOLIC
Offenbart wird ein Verfahren zum Drucken eines diskontinuierlichen Bildes auf eine Vorrichtung unter Verwendung eines Tiefdruckprozesses, der für Verlaufen anfällig ist, wobei die Vorrichtung umfasst: ein Substrat und eine Bildschicht, die mit zumindest einem Abschnitt des Substrats überlagert, wobei die Bildschicht das diskontinuierliche Bild umfasst, wobei das diskontinuierliche Bild während des Druckvorgangs zumindest einen Vorderrand aufweist, wobei das Verfahren umfasst: Drucken einer Vielzahl von Antiverlaufselementen in einem erweiterten Randbereich der Bildschicht benachbart zu dem Vorderrand, wobei die Antiverlaufselemente vor dem Vorderrand des diskontinuierlichen Bilds gedruckt werden, wobei die Antiverlaufselemente und das diskontinuierliche Bild in demselben Druckdurchgang gedruckt werden, wobei die Vielzahl von Antiverlaufselementen für das freie Auge nicht erkennbar ist.
75 GRAVURE PRINTING METHOD PH12018500473 2018-03-05 PH12018500473B1 2018-09-10 SHIGETA TATSUO; MIZUSHIMA RYUMA; MATSUMOTO YUTA; UEDA YASUFUMI
Provided is a gravure printing method by which high printing density and excellent highlight suitability are obtained, even if a gravure plate having high resolution and reduced thickness is used. The gravure printing method comprises: using an aqueous ink having a Zahn cup #3 viscosity at 20oC of 11.0 seconds or more and 20.0 seconds or less, and having an evaporation rate of 30 mass pcnt or less in a drying test, the drying test involving drying 1 g of the ink at a temperature of 40oC and an air flow of 1,400 L/min for 30 minutes; and transferring 1 ml/m2 or more and 7 ml/m2 or less of the ink onto a printing medium.
76 GRAVURE PRINTING METHOD PH12018500473 2018-03-05 PH12018500473A1 2018-09-10 SHIGETA TATSUO; MIZUSHIMA RYUMA; MATSUMOTO YUTA; UEDA YASUFUMI
Provided is a gravure printing method having high print density and excellent highlighting suitability, even if a high-precision gravure printing plate having reduced thickness is used. The gravure printing method uses an aqueous ink and transfers 1-7 ml/m2 of the ink to a printing medium, said aqueous ink having a Zahn cup #3 viscosity at 20oC of 11.0-20.0 s and an evaporation rate of no more than 30 pcnt by mass in a drying test (1 g of ink dried for 30 mins at a temperature of 40oC and an air flow of 1,400 L/min).
77 Portable direct label printing device has heating elements on print head aligned in line for transferring pixels from ink tape directly onto object to be marked DE20208286 2002-05-28 DE20208286U1 2003-01-16
A conveying and output unit (5) includes a print head (10) for thermo-transfer of pixels from an ink tape (33) onto an object, using an array of electrical heating elements (25). The conveying and output unit has pairs of drivable wheels (11,11') with an axis inclination adjustment unit. The print-head comprises multiple movable print head elements (20,20') which respectively abut on one side a spring element, and on the other side are provided with a heating element (25). All heating elements of the print head are aligned in a line (27), and each element is connected to a separate flexible, electrically-conductive power supply channel (29).
78 DE69223792 1992-07-30 DE69223792T2 1998-08-06 HASHIMURA YASUHIRO
A thin film forming device comprising an intaglio printing roll (3) having a number of ink cells (3a), an ink supplying device (5) for filling ink into the ink cells of the intaglio printing roll, a printing roll (4) having a raised portion (41) adapted to be brought into contact with the above intaglio printing roll so that ink in the cells of the intaglio printing roll is transferred to the raised portion, a printing table (6) for fixing a body on which printing is effected and transferring ink on the raised portion of the printing roll to the surface of the body on which printing is effected by bringing the body into contact with the raised portion of the printing roll, a first driving device (31) for rotating the intaglio printing roll, a second driving device (7) for rotating the printing roll independently of the intaglio printing roll, and control means (103, 101, 102) for controlling the first and second driving devices so that the intaglio printing roll and printing roll rotate with a rotational speed difference within a predetermined range, wherein the intaglio printing roll (3) and the printing roll (4) are driven independently with a rotational speed difference within a predetermined range by the control means, whereby a thin film that is more uniform in thickness and smoother can be formed on the surface of the body on which printing is effected.
79 DE69020565 1990-04-27 DE69020565T2 1996-03-28 MASAKI KENICHI; HASHIMURA YASUHIRO
This thin film forming apparatus is so constructed as to form a thin film in such process that ink is fed into recesses of roll-like or plate-like intaglios (3, 23) and, upon contact of the intaglios with the projections (4a, 24a) of the printing rolls (4, 24), transferred to the projections of the printing rolls, whereby the projections of the printing rolls come into contact with an object (10, 30) to be printed so that ink may be transferred to the surface of the object and a thin film may be formed. The apparatus is provided with transfer devices (16, 7, 65, 36, and 39) for transferring the roll- or plate-like intaglios, in which a first thin film is formed and then a second film is formed after transfer of the intaglios as much a distance as required and in either the direction of the rotational axis of the intaglio or that perpendicular thereto, thereby a thin film layer smooth on surface and clear at pattern edge being formed on the printed object.
80 NO224573 1973-05-29 NO136610B 1977-06-27 FARROW H F